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By Herbert Oertel

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Additional info for Modelling the Human Cardiac Fluid Mechanics

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Reik of the Institute for Fluid Mechanics at the University of Karlsruhe. We appreciate the support of B. Jung and W. Schiller for taking the MRT images at the University Hospitals of Freiburg and Bonn, as well as R. Schwarz for converting the images at the Fraunhofer Institute for Applied Information Technology. D. Liepsch and T. Schmidt are thanked for carrying out the validation experiment at Munich University of Applied Sciences. The author would also like to acknowledge his collaboration with F.

2004)). In the case of akinesia of the left ventricle, the contraction amplitude is no longer present. Dyskinesia denotes a systolic outward motion of a myocardial area ,while an aneurism describes a large dyskinetic area with paradoxical pulsation or large akinetic outward sagging which is considerably larger than the normal wall contour even in the diastole. Figure 36 shows the fluid space of a healthy human ventricle, as well as two pathological cases. As the dyskinesia and the akinesia represent characteristic pathological cases and can be modelled with an alteration in the volume flux of the KAHMO heart model, they have been selected for numerical flow simulation.

Geibel from the Department of Cardiovascular Surgery at the University Hospital, Freiburg, who gave important impulses with their medical advice. My special thanks to K. Mayes for the help preparing this manuscript. , 2003. Private comunications. Department of Cardiovascular Surgery, Universit¨atsklinikum Freiburg. , 2003. 3 D CFD Simulation of Pulsatile Blood Flow in the Human Aorta. Chinese J. , 2004. Fluid-Structure Coupled Simulation of the Left Ventricular Flow During the Filling Phase. J.

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